Leung Ming-Yi, Leung Sammual Yu-Lut, Yim King-Chin, Chan Alan Kwun-Wa, Ng Maggie, Yam Vivian Wing-Wah
Department of Chemistry , The University of Hong Kong , Pokfulam Road , Hong Kong , People's Republic of China.
J Am Chem Soc. 2019 Dec 11;141(49):19466-19478. doi: 10.1021/jacs.9b10607. Epub 2019 Dec 2.
A new class of amphiphilic tridentate cyclometalated gold(III) complexes has been designed and synthesized as luminescent supramolecular building blocks. Positively charged trimethylammonium (-CHNMe) containing alkynyl ligands have been incorporated to introduce the electrostatic interactions. The X-ray crystal structures of two of the complexes have been determined, and the existence of π-π interactions between molecules has been observed. Steady-state and time-resolved absorption and emission studies have been carried out to investigate the nature of the excited states. The complexes are found to exhibit self-assembly properties with the assistance of π-π stacking and hydrophobic interactions and possibly weak Au···Au interaction, resulting in notable emergence of low-energy absorption bands and luminescence changes. The presence of a large hydrophobic moiety is found to be crucial for the formation of aggregates, especially in polar media where hydrophobic interactions play an important role. The nature of the counterion has been shown to have a significant effect on the extent of self-assembly in different media. Upon aggregation, nanofibers are formed in polar media, while nanorods are observed in nonpolar media in one of the representative complexes. Interestingly, a small modification on the alkynyl ligand resulted in the formation of nanoribbons instead. Intriguing luminescence mechanochromic properties have also been observed. This orthogonal and rational molecular design strategy has been shown to be effective in the construction of gold(III)-based smart and multiresponsive materials.
一类新型两亲性三齿环金属化金(III)配合物已被设计并合成作为发光超分子构建块。已引入含正电荷三甲基铵(-CHNMe)的炔基配体以引入静电相互作用。已测定了其中两种配合物的X射线晶体结构,并观察到分子间存在π-π相互作用。已进行稳态和时间分辨吸收与发射研究以探究激发态的性质。发现这些配合物在π-π堆积和疏水相互作用以及可能的弱金···金相互作用的辅助下表现出自组装性质,导致低能量吸收带显著出现和发光变化。发现存在大的疏水部分对于聚集体的形成至关重要,特别是在疏水相互作用起重要作用的极性介质中。已表明抗衡离子的性质对不同介质中的自组装程度有显著影响。聚集时,在极性介质中形成纳米纤维,而在一种代表性配合物的非极性介质中观察到纳米棒。有趣的是,对炔基配体进行小的修饰反而导致形成纳米带。还观察到了有趣的发光机械变色性质。这种正交且合理的分子设计策略已被证明在构建基于金(III)的智能和多响应材料方面是有效的。